rallele codes for brown hair. In one population you count 16 grey haired otters, 40 brown otters, and 24 heterozygous otters that have brown hair with grey patches. hether this gene is in Hardy-Weinberg Equilibrium in this population by doing a chi-square eport your answers below. served frequency of grey hair allele, rounded to the nearest .01: served frequency of brown hair allele, rounded to the nearest .01: remaining steps, use the rounded allele frequencies you calculated, but do not round ediate steps. Round only the reported values to the nearest 0.01. ected number of all grey otters: ected number of all brown otters: ected number of brown otters with grey patches: te your chi-square value but do not report it. Use it to answer the following: grees of freedom? Type an integer: calculated chi square value is s than". ect null hypothesis? Type yes or no: Probability of exceeding the critical value p 0.10 0.05 0.025 0.01 0.001 2.706 4.605 6.251 7.779 3.841 5.991 5.024 7.378 7.815 9.348 9.488 11.143 6.635 9.210 11.345 13.277 the critical value. Type "greater than" or 10.828 13.816 16.266 18.467

Human Anatomy & Physiology (11th Edition)
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Author:Elaine N. Marieb, Katja N. Hoehn
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Chapter1: The Human Body: An Orientation
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In otters, hair color is controlled by codominant alleles of one gene. One allele codes for grey hair,
another allele codes for brown hair. In one population you count 16 grey haired otters, 40 brown
haired otters, and 24 heterozygous otters that have brown hair with grey patches.
Test whether this gene is in Hardy-Weinberg Equilibrium in this population by doing a chi-square
test. Report your answers below.
Observed frequency of grey hair allele, rounded to the nearest .01:
Observed frequency of brown hair allele, rounded to the nearest .01:
For the remaining steps, use the rounded allele frequencies you calculated, but do not round
intermediate steps. Round only the reported values to the nearest 0.01.
• Expected number of all grey otters:
Expected number of all brown otters:
• Expected number of brown otters with grey patches:
Calculate your chi-square value but do not report it. Use it to answer the following:
• Degrees of freedom? Type an integer:
The calculated chi square value is
"less than".
Reject null hypothesis? Type yes or no:
df
Probability of exceeding the critical value p
0.10
0.025
0.05
0.01
0.001
2.706
4.605
6.251
7.779
3.841
5.991
7.815
9.488
5.024
7.378
9.348 11.345
11.143 13.277
6.635
9.210
10.828
13.816
16.266
18.467
the critical value. Type "greater than" or
Transcribed Image Text:In otters, hair color is controlled by codominant alleles of one gene. One allele codes for grey hair, another allele codes for brown hair. In one population you count 16 grey haired otters, 40 brown haired otters, and 24 heterozygous otters that have brown hair with grey patches. Test whether this gene is in Hardy-Weinberg Equilibrium in this population by doing a chi-square test. Report your answers below. Observed frequency of grey hair allele, rounded to the nearest .01: Observed frequency of brown hair allele, rounded to the nearest .01: For the remaining steps, use the rounded allele frequencies you calculated, but do not round intermediate steps. Round only the reported values to the nearest 0.01. • Expected number of all grey otters: Expected number of all brown otters: • Expected number of brown otters with grey patches: Calculate your chi-square value but do not report it. Use it to answer the following: • Degrees of freedom? Type an integer: The calculated chi square value is "less than". Reject null hypothesis? Type yes or no: df Probability of exceeding the critical value p 0.10 0.025 0.05 0.01 0.001 2.706 4.605 6.251 7.779 3.841 5.991 7.815 9.488 5.024 7.378 9.348 11.345 11.143 13.277 6.635 9.210 10.828 13.816 16.266 18.467 the critical value. Type "greater than" or
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